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Controlled Ultrasound Tissue Erosion: the Effects of Tissue Type, Exposure Parameters and the Role of Dynamic Microbubble Activity

机译:受控超声组织侵蚀:组织类型,曝光参数和动态微泡活性的作用

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Previous studies have shown that ultrasound can mechanically remove tissue in a highly controlled, localized manner. The dependence of the erosion process on tissue type and exposure parameters was investigated. In particular, the effects of tissue elasticity, gas saturation and pulse intensity-were explored. Moreover, an enhanced and rapidly changing backscatter was highly correlated with the erosion process. A statistical method was developed to detect "initiation" and "extinction" of the highly backscattering environment The relationship between initiation and erosion, and the effects of pulse intensity and gas saturation on time to initiation (initiation delay time) were investigated. Results show the following: (1) erosion is faster with softer tissue; (2) erosion rate does not change significantly for increasing gas saturation, but becomes more consistent with increased gas saturation; (3) erosion rate does not change significantly for increasing intensity; (4) the presence or absence of initiation of enhanced backscatter successfully predicted erosion or lack of erosion at a rate of 98.9%; (5) initiation delay time is shorter with higher intensity and higher gas saturation; and (6) once initiated by high intensity pulses, the highly backscattering environment and erosion can be sustained using a significantly lower intensity than that required to initiate the process.
机译:以前的研究已经表明,超声可以机械地去除组织以高度受控的,局部化的方式。侵蚀处理的组织类型和曝光参数的依赖性进行了研究。特别地,组织弹性,气体饱和度和脉搏的影响强度进行了探索。此外,增强的和迅速变化的反向散射被高度与侵蚀过程相关。被开发的统计方法,以检测“初始”和高度反向散射环境中的起始和侵蚀,和脉冲强度的效果和气体饱和度之间的时间来启动(开始延迟时间)的关系进行了调查的“消光”。结果显示如下:(1)是侵蚀与较软的组织更快; (2)侵蚀速率不增加气体饱和度显著改变,但成为增加气体饱和度较为一致; (3)腐蚀速率不用于增加强度显著变化; (4)存在或不存在后向散射增强的发起的成功预测侵蚀或在98.9%的速率缺乏侵蚀; (5)开始的延迟时间是用更高强度和更高的气体饱和度短;和(6)一旦由高强度的脉冲启动的,则反向散射高度环境和侵蚀可使用显著较低强度比来发起该过程所需的持续。

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